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Performance optimization in Torus-based optical networks-on-chip

机译:基于Torus的片上光网络的性能优化

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摘要

In this paper, the insertion loss and crosstalk noise of M × N Torus-based optical networks-on-chip (ONoCs) is systematically analyzed, which caused performance degradation. The proposed analysis model can be applied to arbitrary 5×5 routers and Torus-based ONoCs. When traditional non-blocking five-port optical routers used in the original Torus structure, it's suffered lager Bit Error Rate (BER) in a small scale. The router optimization and angle optimization method is used for achieving a better quality of network communication and performance improvement. The numerical results show the signal-to-noise ratio (SNR) of the worst-case transmission link in Torus-based ONoCs with certain size. When the network scale of Torus-based ONoC is 6×6 and the input power is 0 dB, the SNR of Torus-based ONoC using Crux router is 21.66 dB, which is 7.06 dB higher than optimized Crossbar router. With angle optimization further used in router level and network level, the SNR can reach to 23.87 dB. Moreover, we also find that a better SNR can be got with M gradually close to N .
机译:本文系统地分析了基于M×N Torus的片上光网络(ONoCs)的插入损耗和串扰噪声,从而导致性能下降。所提出的分析模型可以应用于任意5×5路由器和基于Torus的ONoC。在原始的Torus结构中使用传统的非阻塞式五端口光路由器时,它在小范围内遭受了更大的误码率(BER)。路由器优化和角度优化方法用于实现更好的网络通信质量和性能改善。数值结果表明,在具有一定大小的基于Torus的ONoC中,最坏情况的传输链路的信噪比(SNR)。当基于Torus的ONoC的网络规模为6×6并且输入功率为0 dB时,使用Crux路由器的基于Torus的ONoC的SNR为21.66 dB,这比优化的Crossbar路由器高7.06 dB。通过在路由器级别和网络级别进一步使用角度优化,SNR可以达到23.87 dB。此外,我们还发现,随着M逐渐接近N,可以获得更好的SNR。

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